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Tabor | Desktop

Model P2582D

Rs. 4383405.00

The Tabor P2582D is a high-performance PXIe module featuring 2 AWG channels at 1.25 GS/s with 16-bit resolution, coupled with 2 digitizer channels at 1.5 GS/s with 12-bit resolution. Each AWG channel includes 4 GS of waveform memory and is equipped with 4 markers, all driven by an onboard FPGA. Designed for real-time streaming, feedback-controlled waveforms, and closed-loop operation in sophisticated test systems..

  • Detail
  • Special Features
  • Specification

The P2582D integrates both signal generation and acquisition in a single PXIe module, enabling sophisticated closed-loop and adaptive waveform scenarios. AWG channels produce complex analog waveforms while digitizers capture immediate responses. The onboard sequencer supports conditional logic—ideal for real-time system verification or feedback-driven tests. With its FPGA-enabled streaming capability, waveform length is limited only by external memory. Suitable for applications such as RF system development, quantum control, hardware-in-the-loop testing, and advanced research.

  • Dual AWG channels (1.25 GS/s, 16-bit)

  • Dual-digitizer channels (1.5 GS/s, 12-bit)

  • 4 GS memory per AWG channel

  • Four marker outputs for accurate synchronization

  • Built-in NCO for RF/microwave signal generation

  • Conditional, task-based sequencer for responsive waveform control

  • Real-time waveform streaming to FPGA enables extended playback

  • Feedback-control architecture for dynamic closed‑loop use

  • User-programmable FPGA supports custom signal processing

  • High-speed PCIe Gen3 ×8 interface (~64 Gb/s) with compact PXIe format

Parameter Value
Model P2582D
Platform PXIe (PCIe Gen3 ×8)
AWG Channels 2 (1.25 GS/s, 16-bit)
Digitizer Channels 2 (1.5 GS/s, 12-bit)
AWG Memory 4 GS per channel
Marker Outputs 4
NCO Yes
FPGA User-programmable
Sequencer Task-based, conditional
Streaming Capability Real-time to FPGA
Interface Bandwidth ~64 Gb/s via PCIe Gen3 ×8
Form Factor PXIe module, 3-slot (12 HP)
Scalability High – phase-coherent multi‑module setups